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天津大学博士生导师教师师资介绍简介-黄显

本站小编 Free考研考试/2020-09-13

huangxian@tju.edu.cn
北洋****
教授
PROCESSING TECHNIQUES FOR SILICON-BASED TRANSIENT DEVICES
BIODEGRADABLE MATERIALS FOR MULTILAYER TRANSIENT PRINTED CIRCUIT BOARDS
一种基于柔性可延展叶面传感器的无线监测系统
一种柔性可延展叶面传感系统
磁电柔性连接材料的制作方法、磁电柔性连接器
人体血糖浓度的微创、动态、连续检测方法及检测系统
一种基于碳纳米管和单链DNA复合结构的DNA测序系统
Sensors for long-term and continuous monitoring of biochemicals
汗液监测传感系统、贴片及其制备方法
MEMS Affinity Sensor for Continuous Monitoring of analytes
Provided are methods of making a transient electronic device by fabricating one or more inorganic semiconductor components.
The invention provides transient printed circuit board devices.
一种基于柔性可延展叶面传感器的无线监测系统,包括供电电路和无线通信模块,还设置有用于采集植物叶片的不同信息的柔性可延展叶面传感器和信号处理单元,信号处理单元的信号输入端通过柔性导线连接柔性可延展叶面传感器的信号输出端,信号处理单元的信号输出端连接无线通信模块,并通过无线通信模块将输出的信号发送到管理终端,供电电路连接信号处理单元的电源输入端。
一种柔性可延展叶面传感系统及制备方法,传感系统中信号测量模块通过柔性导线连接用于贴附于植物叶片上用于采集植物叶片的不同信息的柔性可延展叶面传感器。本实用新型与叶面贴合度高、延展性高、能够实时连续地测量植物的信息。
本发明涉及磁性,导电材料及柔性电子领域,具体涉及一种基于钕铁硼永磁体与银(Nd2Fe14B@Ag)复合材料的高性能磁电柔性连接材料,可用于任何刚性电路板与柔性传感器的连接。
本发明提出了一种人体血糖浓度微创、动态、连续检测的方法及检测系统。该检测方法首先采用低频超声对皮肤进行预处理,增大皮肤的通透性,接着用真空负压方法从皮肤中微创抽取组织液,然后将抽取出的组织液通过微通道输送到表面等离子共振传感器系统。本发明在提出的检测方法的基础上,提出了相应的检测系统,该检测方法和检测系统具有很好的临床应用价值和商业前景。
本实用新型的目的在于提供了一种基于碳纳米管和单链DNA复合结构的DNA测序系统,以至少部分克服现有技术中单链DNA分子穿孔产生的信号过于微小,不易读取,且易受噪声干扰;单链DNA分子为柔性结构,易折叠,检测准确率低的技术问题。
The disclosed subject matter relates to a sensor or system for monitoring a target analyte by using a polymer solution that is capable of binding to the analyte.
本发明提供了一种汗液监测传感系统、贴片及其制备方法,其中,所述方法包括:准备柔性可延展基底;制作亲水开孔硅胶海绵;制作多个传感芯片;将每个传感芯片转印至柔性可延展基底上,在每个传感芯片的顶部设置亲水开孔硅胶海绵。本发明结构简单,制备方便,有利于满足监测需求。
Techniques for monitoring a target analyte in a sample using a polymer capable of binding to the target analyte are disclosed.
Analysis of a concentric coplanar capacitor for epidermal hydration sensing
Epidermal photonic devices for quantitative imaging of temperature and thermal transport characteristics of the skin
A MEMS differential viscometric sensor for affinity glucose detection in continuous glucose monitoring
Epidermal differential impedance sensor for conformal skin hydration monitoring
Continuous Monitoring of Glucose in Subcutaneous Tissue Using Microfabricated Differential Affinity Sensors
Thermally tunable polymer microlenses for biological imaging
A dielectric affinity microbiosensor
A capacitive MEMS viscometric sensor for affinity detection of glucose
A MEMS affinity glucose sensor using a biocompatible glucose-responsive polymer
Biodegradable Materials for Multilayer Transient Printed Circuit Boards
Materials and Designs for Wireless Epidermal Sensors of Hydration and Strain
High‐Performance Biodegradable/Transient Electronics on Biodegradable Polymers
Materials, Designs, and Operational Characteristics for Fully Biodegradable Primary Batteries
A differential dielectric affinity glucose sensor
Epidermal impedance sensing sheets for precision hydration assessment and spatial mapping
Injectable, cellular-scale optoelectronics with applications for wireless optogenetics
A MEMS Dielectric Affinity Glucose Biosensor
Stretchable, Wireless Sensors and Functional Substrates for Epidermal Characterization of Sweat
Materials for Programmed, Functional Transformation in Transient Electronic Systems
Thermally tunable polymer microlenses
Soft Microfluidic Assemblies of Sensors, Circuits, and Radios for the Skin
Fabrication and application of flexible, multimodal light-emitting devices for wireless optogenetics
Stretchable batteries with self-similar serpentine interconnects and integrated wireless recharging systems
Synthesis and development of poly(N-hydroxyethyl acrylamide)-ran-3-acrylamidophenylboronic acid polymer fluid for potential a
Low-Cost Manufacturing of Bioresorbable Conductors by Evaporation-Condensation-Mediated Laser Printing and Sintering of Zn Na
Mechanically Milled Irregular Zinc Nanoparticles for Printable Bioresorbable Electronics
Mechanisms and Materials of Flexible and Stretchable Skin Sensors
Analysis of glucose concentration in interstitial fluid by micro surface plasmon resonance sensor
Measurement of Glucose Level by Miniature Surface Plasmon Resonance Biological Sensor with Microfluidic Platform
Materials and applications of bioresorbable electronics
Epidermal radio frequency electronics for wireless power transfer
2017年瞬态电子技术热点回眸
可穿戴传感器进展、挑战和发展趋势
精准医疗中的柔性电子技术
?A biocompatible affinity MEMS sensor for continuous monitoring of glucose
A thermally tunable microlens array on indium tin oxide glass
Development of novel glucose sensing fluids with potential application to microelectromechanical systems-based continuous glu
Novel analysis algorithms for differential optical absorption spectroscopy for pollution monitoring
A MEMS Sensor for Continuous Monitoring of Glucose in Subcutaneous Tissue
A capacitively based MEMS affinity glucose sensor
Prediction of blood glucose using interstitial fluid extracted by ultrasound and vacuum
Epidermal Wireless Sensors on Releasable Films for Biophysical Signal Measurement on Facial Areas
Glucose Concentration Detecting Technology Based on Miniature Surface Plasmon Resonance Biological Sensor
A Novel Minimally Invasive Method to Detect Glucose Concentration without Blood Extraction
A hydrogel-based glucose affinity microsensor
Epidermal electronics with advanced capabilities in near-field communication
Adaptive optoelectronic camouflage systems with designs inspired by cephalopod skins
A microfluidic system with volume sensor and dielectric glucose sensor for continuous glucose monitoring
A MEMS differential dielectric sensor for continuous glucose monitoring
A MEMS differential affinity sensor for continuous glucose detection
A microfabricated dielectric affinity sensor for continuous glucose monitoring
A permittivity-based MEMS affinity glucose sensor with integrated temperature measurements
High-resolution surface plasmon resonance biosensing system for glucose concentration detecting
A mems affinity glucose sensor using permittivity measurements
Capacitive epidermal electronics for electrically safe, long‐term electrophysiological measurements
High-Performance Biodegradable/Transient Electronics on Biodegradable Polymers
Materials for bioresorbable radio frequency electronics
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